The coarsening behavior of copper nanopowders (50-150. nm in size) during mechanical milling was investigated as a function of milling atmosphere and milling time. Pure copper powders were milled under argon and air atmospheres for up to 80. h and the crystal structure, microstructure, and composition of the milled powders were investigated. It was shown that on milling the powders for 80. h under air atmosphere, the particle size was in the range of 7 to 80. μm due to sphere-to-sphere and/or sphere-to-flake welding and from the aggregation of the copper particles during milling. On the other hand, the particle size was only 7 to 35. μm, when milled under argon atmosphere even after 80. h of milling. There was no difference either in the cr...
X-ray line broadening and transmission electron microscopy have been used to investigate the deforma...
It has been found difficult to fully densify some mechanically milled pure metal powders by spark pl...
Synthesis and characterization of Cu96Cr4 and Cu95Cr5 nanostructures developed by high energy ball m...
The coarsening behavior of copper nanopowders (50-150. nm in size) during mechanical milling was inv...
The coarsening behavior of copper nanopowders (50-150 nm in size) during mechanical milling was inve...
AbstractThe process of nanocrystalline structure formation during mechanical milling was studied in ...
Nanoparticles have a wide range of applications like biological sensors, optoelectronic devices, cat...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
International audienceThe microstructure evolution of Cu nanostructured powders at different conditi...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
The effect of the simultaneous presence of nano- and micro-sized Al2O3 particles on the microstructu...
Copper matrix was reinforced with Al2O3 particles of different size and amount by internal oxidation...
The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % Al powder...
The inert gas atomised prealloyed copper powders containing 3.5 wt.% Al were milled up to 20 h in th...
Nanostructured copper powder was synthesized using high velocity cryomilling in order to induce def...
X-ray line broadening and transmission electron microscopy have been used to investigate the deforma...
It has been found difficult to fully densify some mechanically milled pure metal powders by spark pl...
Synthesis and characterization of Cu96Cr4 and Cu95Cr5 nanostructures developed by high energy ball m...
The coarsening behavior of copper nanopowders (50-150. nm in size) during mechanical milling was inv...
The coarsening behavior of copper nanopowders (50-150 nm in size) during mechanical milling was inve...
AbstractThe process of nanocrystalline structure formation during mechanical milling was studied in ...
Nanoparticles have a wide range of applications like biological sensors, optoelectronic devices, cat...
In this paper, the microstructure and hardness evolutions of commercially pure Cu subjected to high ...
International audienceThe microstructure evolution of Cu nanostructured powders at different conditi...
Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milli...
The effect of the simultaneous presence of nano- and micro-sized Al2O3 particles on the microstructu...
Copper matrix was reinforced with Al2O3 particles of different size and amount by internal oxidation...
The microstructural and morphological changes of inert gas atomized pre-alloyed Cu-1 wt. % Al powder...
The inert gas atomised prealloyed copper powders containing 3.5 wt.% Al were milled up to 20 h in th...
Nanostructured copper powder was synthesized using high velocity cryomilling in order to induce def...
X-ray line broadening and transmission electron microscopy have been used to investigate the deforma...
It has been found difficult to fully densify some mechanically milled pure metal powders by spark pl...
Synthesis and characterization of Cu96Cr4 and Cu95Cr5 nanostructures developed by high energy ball m...